November 2023

Conference Paper

Enhancing Adaptive Physics Refinement Simulations Through the Addition of Realistic Red Blood Cell Counts

By:
Roychowdhury, Sayan; Mahmud, Samreen; Martin, Aristotle; Balogh, Peter; Puleri, Daniel; Gounley, John P; Draeger, Erik; Randles, Amanda
Page Number:
1-13
Book Title:
SC '23: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysis
Publication Date:
November 2023
Publisher Location:
Association for Computing Machinery, New York, New York, United States of America
Conference Name:
International Conference for High Performance Computing, Networking, Storage, and Analysis (SC)
Conference Location:
Denver, Colorado, United States of America
Conference Sponsor:
ACM/IEEE
View DOI Listing:
https://doi.org/10.1145/3581784.3607105

Abstract

Simulations of cancer cell transport require accurately modeling mm-scale and longer trajectories through a circulatory system containing trillions of deformable red blood cells, whose intercellular interactions require submicron fidelity. Using a hybrid CPU-GPU approach, we extend the advanced physics refinement (APR) method to couple a finely-resolved region of explicitly-modeled red blood cells to a coarsely-resolved bulk fluid domain. We further develop algorithms that: capture the dynamics at the interface of differing viscosities, maintain hematocrit within the cell-filled volume, and move the finely-resolved region and encapsulated cells while tracking an individual cancer cell. Comparison to a fully-resolved fluid-structure interaction model is presented for verification. Finally, we use the advanced APR method to simulate cancer cell transport over a mm-scale distance while maintaining a local region of RBCs, using a fraction of the computational power required to run a fully-resolved model.


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